首页> 美国卫生研究院文献>Nucleic Acids Research >A kinetic study of rat recombinant DNA polymerase beta: detection of a slow (hysteretic) transition in polymerase activity and inhibition by butylphenyl-deoxyguanosine triphosphate.
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A kinetic study of rat recombinant DNA polymerase beta: detection of a slow (hysteretic) transition in polymerase activity and inhibition by butylphenyl-deoxyguanosine triphosphate.

机译:对大鼠重组DNA聚合酶β的动力学研究:检测聚合酶活性的缓慢(滞后)转变并检测丁基磷酸-脱氧鸟苷三磷酸的抑制作用。

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摘要

We have identified and characterized a distinct non-linearity in the time course of the reaction of mammalian DNA polymerase beta with synthetic polynucleotides. Nucleotide incorporation is biphasic; an initial burst of activity decays exponentially to a lower steady-state velocity. This slow transition in polymerase activity is not due to substrate depletion, abortive complex formation, or enzyme inactivation. The data are consistent with description of the beta-polymerase as a hysteretic enzyme, a finding which provides a potential explanation for the non-hyperbolic kinetics which have been reported previously for this polymerase. We have also found, in contrast to some previous data, that the nucleotide analogue, N2-(p-n-butylphenyl)-2'-deoxyguanosine-5'-triphosphate (BuPdGTP), is an inhibitor of the beta-polymerase. When poly(dC).oligo(dG) is used as template.primer, inhibition of the initial velocity is competitive with dGTP with a Ki of 1.25 microM. On activated DNA, however, beta-polymerase displays sensitivity to BuPdGTP which overlaps with that previously reported for DNA polymerase delta; 100 microM BuPdGTP is required to inhibit the initial velocity of a dGTP-deficient, truncated assay. Finally, we demonstrate that, in addition to its inhibition of initial velocity, BuPdGTP also modulates both the rate constant of the slow transition in polymerase activity, and the steady-state velocity of the beta-polymerase.
机译:我们已经确定并表征了哺乳动物DNA聚合酶β与合成多核苷酸反应的时间过程中的明显非线性。核苷酸掺入是双相的。最初的活动爆发成指数衰减至较低的稳态速度。聚合酶活性的这种缓慢转变不是由于底物耗尽,流产复合物形成或酶失活所致。数据与β-聚合酶作为一种滞后酶的描述是一致的,这一发现为以前已经报道过的该聚合酶的非双曲线动力学提供了可能的解释。与一些先前的数据相反,我们还发现核苷酸类似物N2-(对-正丁基苯基)-2'-脱氧鸟苷-5'-三磷酸(BuPdGTP)是β聚合酶的抑制剂。当将poly(dC).oligo(dG)用作template.primer时,Ki为1.25 microM的初始速度抑制与dGTP竞争。然而,在活化的DNA上,β聚合酶对BuPdGTP的敏感性与先前报道的DNA聚合酶δ重叠。需要100 microM BuPdGTP来抑制dGTP缺失的截短测定的初始速度。最后,我们证明,除了抑制初始速度外,BuPdGTP还调节聚合酶活性中缓慢转变的速率常数和β聚合酶的稳态速度。

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